EP3689204B1 - Grinding device - Google Patents
Grinding device Download PDFInfo
- Publication number
- EP3689204B1 EP3689204B1 EP20151199.5A EP20151199A EP3689204B1 EP 3689204 B1 EP3689204 B1 EP 3689204B1 EP 20151199 A EP20151199 A EP 20151199A EP 3689204 B1 EP3689204 B1 EP 3689204B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- grinding
- supporting
- unit
- seat
- rotating shaft
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
- 239000000843 powder Substances 0.000 claims description 24
- 238000004140 cleaning Methods 0.000 claims description 13
- 230000002093 peripheral effect Effects 0.000 claims description 11
- 241000533293 Sesbania emerus Species 0.000 claims description 6
- 238000003780 insertion Methods 0.000 claims description 5
- 230000037431 insertion Effects 0.000 claims description 5
- 239000000126 substance Substances 0.000 claims description 5
- 230000000694 effects Effects 0.000 description 3
- 235000002566 Capsicum Nutrition 0.000 description 1
- 239000006002 Pepper Substances 0.000 description 1
- 244000046052 Phaseolus vulgaris Species 0.000 description 1
- 235000010627 Phaseolus vulgaris Nutrition 0.000 description 1
- 235000016761 Piper aduncum Nutrition 0.000 description 1
- 235000017804 Piper guineense Nutrition 0.000 description 1
- 244000203593 Piper nigrum Species 0.000 description 1
- 235000008184 Piper nigrum Nutrition 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000000994 depressogenic effect Effects 0.000 description 1
- 235000013305 food Nutrition 0.000 description 1
- 235000013599 spices Nutrition 0.000 description 1
- 238000005406 washing Methods 0.000 description 1
Images
Classifications
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J31/00—Apparatus for making beverages
- A47J31/42—Beverage-making apparatus with incorporated grinding or roasting means for coffee
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J42/00—Coffee mills; Spice mills
- A47J42/02—Coffee mills; Spice mills having grinding cones
- A47J42/06—Coffee mills; Spice mills having grinding cones mechanically driven
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J42/00—Coffee mills; Spice mills
- A47J42/38—Parts or details
- A47J42/46—Driving mechanisms; Coupling to drives
Definitions
- the present invention relates to a food processor, and in particular, to a grinding device suitable for grinding beans such as coffee beans.
- an existing grinding device includes a grinding mechanism 11 and a driving mechanism 12 which are connected with each other, and a grinding seat 13 which is located between the grinding mechanism 11 and the driving mechanism 12.
- the grinding mechanism 11 can be driven by the driving mechanism 12 to grind coffee beans, and includes a rotating shaft unit 112 which is axially inserted in the driving mechanism 12 and inserted in the grinding seat 13, an inner grinding unit 113 which is sleeved on the rotating shaft unit 112 and can be driven by the rotating shaft unit 112 to rotate, and an outer grinding unit 114 which is spaced around the inner grinding unit 113.
- the driving mechanism 12 includes elements such as a motor capable of driving the rotation of the rotating shaft unit 112. Since the structure of the driving mechanism 12 is well known to the technicians, the detailed description is omitted here.
- the top end of the rotating shaft unit 112 is a free end. Therefore, during the operation of the grinding device, not only the rotating shaft unit 112 will rotate with its own axis as the axis of rotation, but also the top end of the rotating shaft unit 112 will draw a circle and swing, which will generate a state of operation similar to the precession in physics and drive the inner grinding unit 113 to shake, so that the inner grinding unit 113 may collide with the outer grinding unit 114. In other words, the relative stability between components of this kind of grinding device is poor, and the possibility of damage caused by components colliding with each other is also high. In addition, when the inner grinding unit 113 shakes relative to the outer grinding unit 114, the distance between the inner grinding unit 113 and the outer grinding unit 114 will also change, resulting in uneven powder thickness after grinding, which needs further improvement.
- EP1444943A1 discloses a grinder for pepper grains, spices, coffee beans or the like which has a body, a motor seat, an engagement plate, a revolving seat, a base, a battery seat and a cover.
- a press button of the cover When a press button of the cover is depressed, electricity-conducting pieces of the battery seat will be pressed to come into contact with each other to form an open electric circuit, by which a motor will be actuated to rotate a reducing gear assembly of the motor seat so that a gear of the reducing gear assembly will be rotated to turn a journal to swivel a spindle to turn a grinding member, thereby enabling the grinder to proceed with an automatic grinding operation.
- the body and the revolving seat are rotated by a user with hands, the grinding member will be turned around accordingly to make the grinder proceed with a manual grinding operation.
- the object of the present invention is to provide a grinding device capable of solving at least one problem of the background section.
- a grinding device provided by the present invention includes a grinding mechanism, a driving mechanism capable of driving the grinding mechanism to operate, and a grinding seat located between the grinding mechanism and the driving mechanism.
- the grinding mechanism includes a rotating shaft unit inserted in and protruded from the grinding seat to be rotatably connected to the driving mechanism, an inner grinding unit sleeved on the rotating shaft unit, and an outer grinding unit surrounding and spaced from the inner grinding unit.
- the driving mechanism is able to drive the rotating shaft unit to bring the inner grinding unit to rotate and grind the substance to be ground in cooperation with the outer grinding unit.
- the grinding mechanism further includes a supporting unit sleeved on and abutted against the rotating shaft unit.
- the supporting unit includes a first supporting seat and a first supporting assembly connected to the first supporting seat.
- the first supporting assembly defines a first supporting hole.
- the supporting unit further includes a second supporting assembly assembled to the first supporting seat and located between the inner grinding unit and the grinding seat.
- the second supporting assembly defines a second supporting hole.
- the top end of the rotating shaft unit is rotationally inserted in the first supporting hole, and the bottom end of the rotating shaft unit is rotationally inserted in the second supporting hole.
- the driving mechanism is located under the grinding mechanism, and the driving mechanism is provided with an assembling hole under the second supporting hole.
- the bottom end of the rotating shaft unit is further detachably inserted into the assembling hole of the driving mechanism, and the first supporting seat is detachably assembled and connected to the grinding seat, so that the grinding mechanism is able to be detached from or assembled to the grinding seat.
- the first supporting assembly is sleeved on the rotating shaft unit.
- the first supporting assembly includes a first bearing defining the first supporting hole for the top end of the rotating shaft unit to be inserted into and abutted against, and a first supporting member connecting to the first supporting seat and supporting the first bearing.
- the rotating shaft unit includes a first shaft part inserted in the first supporting hole, an opposite second shaft part inserted in the second supporting hole and the assembling hole, and a connecting shaft part connected between the first shaft part and the second shaft part and having an outer diameter larger than the first shaft part.
- the supporting unit further includes an elastic member sleeved on the first shaft part and sandwiched between the connecting shaft part and the first bearing of the first supporting assembly.
- the first supporting member includes an outer ring connected to the first supporting seat, an inner ring spaced from the outer ring and provided for the insertion of the first bearing, and a plurality of ribs connected between the outer ring and the inner ring.
- annular groove is formed at the top of the first supporting seat, a plurality of rib holding grooves extend upwards from the annular groove and are spaced from each other.
- the outer ring of the first supporting member is embedded in the annular groove, the ribs of the first supporting member are embedded in the rib holding grooves respectively.
- the second supporting assembly is inserted by the rotating shaft unit.
- the second supporting assembly is sleeved on the rotating shaft unit.
- the assembling hole has a polygonal cross section.
- the rotating shaft unit includes a first shaft part and an opposite second shaft part.
- the second shaft part has a polygonal cross section and is detachably inserted into the assembling hole.
- the second supporting assembly includes a second supporting seat assembled to the first supporting seat, and a second bearing arranged in the second supporting seat for the bottom end of the rotating shaft unit to be inserted into and abutted against.
- the second supporting seat is located between the inner grinding unit and the grinding seat, and the second bearing defines the second supporting hole.
- the second supporting seat includes a bottom base used for the second bearing to be inserted into and located between the inner grinding unit and the grinding seat, and a peripheral wall extending upwards from the bottom base.
- the bottom base is cooperated with the peripheral wall to define a receiving space for receiving the inner grinding unit and the rotating shaft unit.
- the grinding mechanism further includes a powder cleaning unit sleeved on the rotating shaft unit and located between the bottom base of the second supporting seat and the inner grinding unit.
- the powder cleaning unit includes a rotary member sleeved on the rotating shaft unit and a plastic member connected to the rotary member.
- the plastic member includes a plurality of films extending outwards and spirally and abutting against the bottom base.
- a plurality of assembling grooves which are spaced from each other and substantially inverted L-shaped are formed at the bottom of the first supporting seat.
- the second supporting seat further includes a plurality of assembling blocks extending radially outwards from the peripheral wall. The assembling blocks are embedded in the assembling grooves, respectively.
- the second supporting seat further includes an annular seat extending downwards from the bottom base, the second bearing is inserted in the annular seat.
- the first supporting seat includes a plurality of limiting blocks which extend radially outwards, the grinding seat defines a grinding space provided for the grinding mechanism to install therein and a plurality of limiting grooves formed by recessing downwardly from top to bottom.
- the limiting grooves are respectively used for the limiting blocks to embed therein.
- the grinding device is mounted in a body of a coffee machine and used for grinding coffee beans.
- the grinding mechanism provides support for the rotating shaft unit by the supporting unit abutting against the rotating shaft unit, which can improve the stability of the rotating shaft unit, to solve the problem of poor stability of the rotating shaft unit and the problem of uneven powder thickness due to the shaking of the inner grinding unit relative to the outer grinding unit.
- a first embodiment of the grinding device of the present invention is suitable for mounting in a body 211 of a coffee machine 21 and grinding a substance to be ground (not shown in the figures).
- the substance to be ground is coffee bean in the first embodiment.
- the grinding device of the first embodiment includes a grinding mechanism 22 capable of grinding the substance to be ground, a driving mechanism 23 under the grinding mechanism 22 and capable of driving the grinding mechanism 22 to operate, and a grinding seat 24 between the grinding mechanism 22 and the driving mechanism 23.
- the grinding mechanism 22 includes a supporting unit 3 installed on the grinding seat 24, a rotating shaft unit 4 assembled on the supporting unit 3, an elastic member 5 sleeved on the rotating shaft unit 4, and an outer grinding unit 6, an inner grinding unit 7 and a powder cleaning unit 8 located between the supporting unit 3 and the rotating shaft unit 4.
- the supporting unit 3 includes a first supporting seat 31 supported on the grinding seat 24, a first supporting assembly 32 embedded in the top of the first supporting seat 31, and a second supporting assembly 33 embedded in the bottom of the first supporting seat 31.
- the first supporting seat 31 is substantially annular. At the top of the first supporting seat 31, an annular groove 311 (see FIG. 5 ) is formed for embedding the first supporting assembly 32, and three rib holding grooves 312 extend upwards from the annular groove 311 and are spaced from each other at equal intervals (due to the angle of view, only two rib holding grooves 312 are shown in the figures, see FIG. 3 ). At the bottom of the first supporting seat 31, three assembling grooves 313 which are spaced from each other at equal intervals and substantially inverted L-shaped are formed for the assembly of the second supporting assembly 33 (due to the angle of view, only two assembling grooves 313 are shown in the figures, see FIG. 4 ). The first supporting seat 31 further includes three limiting blocks 314 which extend radially outwards for the first supporting seat 31 to be limited by the grinding seat 24 and unable to rotate relative to the grinding seat 24 (see FIG. 4 ).
- the first supporting assembly 32 includes a first supporting member 34 and a first bearing 35 installed in the first supporting member 34.
- the first supporting member 34 includes an outer ring 341 which is annular and embedded in the annular groove 311 of the first supporting seat 31, an inner ring 342 which is spaced from the outer ring 341 and provided for the insertion of the first bearing 35, and a plurality of ribs 343 which are connected between the outer ring 341 and the inner ring 342 and embedded in the rib holding grooves 312 of the first supporting seat 31 respectively.
- the first bearing 35 is sleeved on the rotating shaft unit 4 and abuts against the rotating shaft unit 4.
- the first bearing 35 is defined with a first supporting hole 351 for the top end of the rotating shaft unit 4 to be rotationally inserted therein.
- the second supporting assembly 33 includes a second supporting seat 36 assembled at the bottom of the first supporting seat 31, and a second bearing 37 arranged in the second supporting seat 36.
- the second supporting seat 36 includes a substantially circular bottom base 361 provided for the insertion of the second bearing 37, a peripheral wall 362 extending upwards from the bottom base 361, an annular seat 363 extending downwards from the bottom base 361, and three assembling blocks 364 extending radially outwards from the peripheral wall 362 (due to the angle of view, only one or two of the assembling blocks 364 are shown in the figures).
- the bottom base 361 is located under the outer grinding unit 6, the inner grinding unit 7 and the powder cleaning unit 8, and is cooperated with the peripheral wall 362 to define a receiving space 365 for receiving the rotating shaft unit 4, the outer grinding unit 6, the inner grinding unit 7 and the powder cleaning unit 8.
- the peripheral wall 362 is laterally provided with a powder outlet 366.
- the assembling blocks 364 are embedded in the assembling grooves 313 of the first supporting seat 31, respectively.
- the second bearing 37 is inserted in the annular seat 363 of the second supporting seat 36, and the second bearing 37 is sleeved on and abutted against the bottom end of the rotating shaft unit 4.
- the second bearing 37 defines a second supporting hole 371 for the bottom end of the rotating shaft unit 4 to be rotatably inserted therein.
- the rotating shaft unit 4 includes a first shaft part 41 and an opposite second shaft part 42 provided for being assembled and connected to the driving mechanism 23, and a connecting shaft part 43 connected between the first shaft part 41 and the second shaft part 42 with an outer diameter larger than the first shaft part 41.
- the first shaft part 41 and the second shaft part 42 are respectively inserted into the first supporting hole 351 and the second supporting hole 371, and are respectively abutted against the first bearing 35 and the second bearing 37, and are respectively supported by the first bearing 35 and the second bearing 37.
- the second shaft part 42 is inserted in the grinding seat 24, and protrudes downward from the grinding seat 24, and is inserted in the driving mechanism 23.
- the cross section of the second axis part 42 is polygonal.
- the width of the connecting shaft part 43 is larger than the first shaft part 41 and the second shaft part 42.
- the elastic member 5 is sleeved on the first shaft part 41, with a top end abutting against the first bearing 35 of the first supporting assembly 32 and a bottom end abutting against the connecting shaft part 43.
- the elastic member 5 provides an elastic force to maintain the interval distance between the first supporting assembly 32 and the connecting shaft part 43.
- the outer grinding unit 6 includes an upper grinding part 61 and a lower grinding part 62 which are connected with each other.
- the upper grinding part 61 is located under the first supporting member 34, and has a shrinking size in the direction from top to bottom, and the top end of the upper grinding part 61 is embedded in the annular groove 311 of the first supporting seat 31.
- the lower grinding part 62 extends from the upper grinding part 61 with an expanded size in the direction from top to bottom.
- the lower grinding part 62 cooperates with the upper grinding part 61 to surround the inner grinding unit 7 at interval.
- the inner grinding unit 7 has a shape of a substantially truncated cone, and is sleeved on the connecting shaft part 43 and the second shaft part 42 of the rotating shaft unit 4, and is located between the outer grinding unit 6 and the powder cleaning unit 8 along the radial direction.
- the powder cleaning unit 8 includes a rotary member 81 sleeved on the rotating shaft unit 4, a plastic member 82 assembled to the rotary member 81 and extending downward and abutting against the bottom base 361 of the second supporting seat 36, and a second supporting member 83 and a third supporting member 84.
- the plastic member 82 has a plurality of films 821 extending radially outwards and spirally.
- the second supporting member 83 includes a plurality of pins 831 inserted in the bottom base 361 and abutted on the grinding seat 24.
- the grinding mechanism 22 can be supported on the grinding seat 24 by the pins 831.
- the third supporting member 84 is in the shape of a nut, abutted against the second supporting member 83 and the rotary member 81, sleeved on the second shaft part 42 of the rotating shaft unit 4, and provided for the plastic member 82 to sleeve on.
- the driving mechanism 23 is formed with an assembling hole 231 with a shape corresponding to the shape of the second shaft part 42 of the rotating shaft unit 4.
- the assembling hole 231 is used for the second shaft part 42 to be detachably assembled with the driving mechanism 23, such that the driving mechanism 23 can drive the rotating shaft unit 4 to rotate with its own axis.
- the grinding seat 24 defines a grinding space 241 provided for the grinding mechanism 22 to install, a powder discharge channel 242 extending outwards and downwards from the grinding space 241 (see FIG. 5 ), a through hole 243 communicating with the grinding space 241, and three limiting grooves 244 provided at equal intervals and formed by recessing downwardly from top to bottom.
- the through hole 243 and the first supporting hole 351 are oppositely spaced from each other, respectively for the insertion of the second shaft part 42 and the first shaft part 41 of the rotating shaft unit 4.
- the limiting grooves 244 are respectively used for the limiting blocks 314 of the first supporting seat 31 to embed therein, so as to limit the first supporting seat 31.
- the driving mechanism 23 can drive the first shaft part 41 and the second shaft part 42 of the rotating shaft unit 4 to be supported and limited by the first bearing 35 and the second bearing 37 respectively. Therefore, when the rotating shaft unit 4 is rotating, the top end (i.e., the first shaft part 41) will not have the situation of drawing circle and swinging, and the operation stability is good, thereby avoiding the problem that the inner grinding unit 7 collides with the outer grinding unit 6 due to the shaking of the rotating shaft unit 4. Meanwhile, the powder ground by the first embodiment has better uniformity of thickness and fineness.
- the elastic member 5 can maintain the distance between the first supporting assembly 32 and the connecting shaft part 43, and can also keep the outer grinding unit 6 embedded in the first supporting assembly 32 at a certain distance from the inner grinding unit 7, thereby also having the effect of avoiding the outer grinding unit 6 from colliding with the inner grinding unit 7 and having the effect of ensuring uniform powder thickness and fineness.
- the first supporting member 34 and the first supporting seat 31 are two-piece detachable design, which have the advantages of detaching from each other to be cleaned thoroughly.
- the first supporting member 34 and the first supporting seat 31 may be integrally formed, so as to have the advantages of convenient assembly and disassembly wholly.
- the outer grinding unit 6 is assembled to the first supporting seat 31 of the supporting unit 3, the rotating shaft unit 4 is inserted between the first supporting seat 31 and the second supporting seat 36, the inner grinding unit 7, the outer grinding unit 6 and the powder cleaning unit 8 are sleeved on the rotating shaft unit 4.
- the user only needs to take out the first supporting seat 31 and the second supporting seat 36 of the supporting unit 3, so that the grinding mechanism 22 of the first embodiment can be wholly detached from the grinding seat 24, as shown in FIG. 6 , and the whole grinding mechanism 22 can be taken out for cleaning or washing, which is quite convenient.
- the first shaft part 41 and the second shaft part 42 are still limited and supported by the first bearing 35 and the second bearing 37 respectively, or in other words, the second shaft part 42 is still limited and supported by the second supporting assembly 33 when losing the limiting and supporting of the driving mechanism 23. Therefore, the stability of the rotating shaft unit 4 is quite good when the grinding mechanism 22 is taken out, and the rotating shaft unit 4 will not shake relative to the supporting unit 3.
- the foregoing design has the advantages of convenient assembly.
- the second shaft part 42 of the rotating shaft unit 4 will be aligned with and inserted into the through hole 243 of the grinding seat 24 and the assembling hole 231 of the driving mechanism 23, which is quite convenient for the users to install.
- the films 821 of the powder cleaning unit 8 can push out the coffee powder from the powder outlet 366 of the second supporting seat 36.
- the films 821 are abutted on the bottom base 361 of the second supporting seat 36, when the films 821 rotate, the powder generated by grinding can be prevented from adhering to the bottom base 361.
- a second embodiment of the grinding device which does not fall within the scope of the claims, is similar to the first embodiment, with the differences described as follows.
- the first supporting seat 31 and the first supporting member 34 of the first supporting assembly 32 are integrally formed.
- the second supporting seat 36 omits the bottom base 361 (see FIG. 4 ) and the powder outlet 366, and the second supporting seat 36 includes a plurality of rib walls 367 connected between the peripheral wall 362 and the annular seat 363.
- the driving mechanism 23 is located above the grinding mechanism 22, and further includes a clutch 44 sleeved on the top of the first shaft part 41 and having a polygonal cross section.
- the clutch 44 can be detachably inserted into the assembling hole 231 of the driving mechanism 23, so that the first shaft part 41 is detachably inserted into the driving mechanism 23.
- the bottom end of the second shaft part 42 of the rotating shaft unit 4 is embedded in the second bearing 37 of the second supporting assembly 33.
- the powder cleaning unit 8 omits the plastic member 82 and the second supporting member 83, and the shape of the third supporting member 84 is slightly different.
- the supporting unit 3 of the second embodiment can also support and limit the two opposite ends of the rotating shaft unit 4, the same effect as the first embodiment can be achieved.
- the second embodiment is characterized in that the driving mechanism 23 drives the rotating shaft unit 4 from the top, and is not located at the bottom to block the coffee powder from falling down. Therefore, the coffee powder after being ground can fall out directly, and the second shaft part 42 of the rotating shaft unit 4 can be shortened because there is no need to connect to the driving mechanism 23.
- the number of the ribs 343 of the first supporting member 34 and the rib walls 367 of the second supporting seat 36 are respectively three, but it is not limited in other embodiments of the present invention. In other words, the number of the ribs 343 of the first supporting member 34 and the rib walls 367 of the second supporting seat 36 can also be two, four, five or more.
- the rotating shaft unit 4 is supported and limited by the supporting unit 3 in the grinding mechanism 22 of the grinding device of the present invention, to improve the stability of the rotating shaft unit 4 and solve the existing problem of poor stability.
- the object of the present invention can be achieved.
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- Engineering & Computer Science (AREA)
- Food Science & Technology (AREA)
- Mechanical Engineering (AREA)
- Crushing And Grinding (AREA)
- Finish Polishing, Edge Sharpening, And Grinding By Specific Grinding Devices (AREA)
- Constituent Portions Of Griding Lathes, Driving, Sensing And Control (AREA)
Description
- The present invention relates to a food processor, and in particular, to a grinding device suitable for grinding beans such as coffee beans.
- Referring to
FIG. 1 , an existing grinding device includes agrinding mechanism 11 and adriving mechanism 12 which are connected with each other, and agrinding seat 13 which is located between thegrinding mechanism 11 and thedriving mechanism 12. Thegrinding mechanism 11 can be driven by thedriving mechanism 12 to grind coffee beans, and includes a rotatingshaft unit 112 which is axially inserted in thedriving mechanism 12 and inserted in thegrinding seat 13, aninner grinding unit 113 which is sleeved on the rotatingshaft unit 112 and can be driven by the rotatingshaft unit 112 to rotate, and anouter grinding unit 114 which is spaced around theinner grinding unit 113. Thedriving mechanism 12 includes elements such as a motor capable of driving the rotation of the rotatingshaft unit 112. Since the structure of thedriving mechanism 12 is well known to the technicians, the detailed description is omitted here. - Although the bottom end of the rotating
shaft unit 112 is inserted in thedriving mechanism 12 and limited, the top end of the rotatingshaft unit 112 is a free end. Therefore, during the operation of the grinding device, not only the rotatingshaft unit 112 will rotate with its own axis as the axis of rotation, but also the top end of the rotatingshaft unit 112 will draw a circle and swing, which will generate a state of operation similar to the precession in physics and drive theinner grinding unit 113 to shake, so that theinner grinding unit 113 may collide with theouter grinding unit 114. In other words, the relative stability between components of this kind of grinding device is poor, and the possibility of damage caused by components colliding with each other is also high. In addition, when theinner grinding unit 113 shakes relative to theouter grinding unit 114, the distance between theinner grinding unit 113 and theouter grinding unit 114 will also change, resulting in uneven powder thickness after grinding, which needs further improvement. -
EP1444943A1 discloses a grinder for pepper grains, spices, coffee beans or the like which has a body, a motor seat, an engagement plate, a revolving seat, a base, a battery seat and a cover. When a press button of the cover is depressed, electricity-conducting pieces of the battery seat will be pressed to come into contact with each other to form an open electric circuit, by which a motor will be actuated to rotate a reducing gear assembly of the motor seat so that a gear of the reducing gear assembly will be rotated to turn a journal to swivel a spindle to turn a grinding member, thereby enabling the grinder to proceed with an automatic grinding operation. When the body and the revolving seat are rotated by a user with hands, the grinding member will be turned around accordingly to make the grinder proceed with a manual grinding operation. - The object of the present invention is to provide a grinding device capable of solving at least one problem of the background section.
- A grinding device provided by the present invention includes a grinding mechanism, a driving mechanism capable of driving the grinding mechanism to operate, and a grinding seat located between the grinding mechanism and the driving mechanism. The grinding mechanism includes a rotating shaft unit inserted in and protruded from the grinding seat to be rotatably connected to the driving mechanism, an inner grinding unit sleeved on the rotating shaft unit, and an outer grinding unit surrounding and spaced from the inner grinding unit. The driving mechanism is able to drive the rotating shaft unit to bring the inner grinding unit to rotate and grind the substance to be ground in cooperation with the outer grinding unit. The grinding mechanism further includes a supporting unit sleeved on and abutted against the rotating shaft unit. The supporting unit includes a first supporting seat and a first supporting assembly connected to the first supporting seat. The first supporting assembly defines a first supporting hole. The supporting unit further includes a second supporting assembly assembled to the first supporting seat and located between the inner grinding unit and the grinding seat. The second supporting assembly defines a second supporting hole. The top end of the rotating shaft unit is rotationally inserted in the first supporting hole, and the bottom end of the rotating shaft unit is rotationally inserted in the second supporting hole. The driving mechanism is located under the grinding mechanism, and the driving mechanism is provided with an assembling hole under the second supporting hole. The bottom end of the rotating shaft unit is further detachably inserted into the assembling hole of the driving mechanism, and the first supporting seat is detachably assembled and connected to the grinding seat, so that the grinding mechanism is able to be detached from or assembled to the grinding seat.
- In the grinding device of the present invention, the first supporting assembly is sleeved on the rotating shaft unit.
- In the grinding device of the present invention, the first supporting assembly includes a first bearing defining the first supporting hole for the top end of the rotating shaft unit to be inserted into and abutted against, and a first supporting member connecting to the first supporting seat and supporting the first bearing.
- In the grinding device of the present invention, the rotating shaft unit includes a first shaft part inserted in the first supporting hole, an opposite second shaft part inserted in the second supporting hole and the assembling hole, and a connecting shaft part connected between the first shaft part and the second shaft part and having an outer diameter larger than the first shaft part. The supporting unit further includes an elastic member sleeved on the first shaft part and sandwiched between the connecting shaft part and the first bearing of the first supporting assembly.
- In the grinding device of the present invention, the first supporting member includes an outer ring connected to the first supporting seat, an inner ring spaced from the outer ring and provided for the insertion of the first bearing, and a plurality of ribs connected between the outer ring and the inner ring.
- In the grinding device of the present invention, an annular groove is formed at the top of the first supporting seat, a plurality of rib holding grooves extend upwards from the annular groove and are spaced from each other. The outer ring of the first supporting member is embedded in the annular groove, the ribs of the first supporting member are embedded in the rib holding grooves respectively.
- In the grinding device of the present invention, the second supporting assembly is inserted by the rotating shaft unit. The second supporting assembly is sleeved on the rotating shaft unit.
- In the grinding device of the present invention, the assembling hole has a polygonal cross section. The rotating shaft unit includes a first shaft part and an opposite second shaft part. The second shaft part has a polygonal cross section and is detachably inserted into the assembling hole.
- In the grinding device of the present invention, the second supporting assembly includes a second supporting seat assembled to the first supporting seat, and a second bearing arranged in the second supporting seat for the bottom end of the rotating shaft unit to be inserted into and abutted against. The second supporting seat is located between the inner grinding unit and the grinding seat, and the second bearing defines the second supporting hole.
- In the grinding device of the present invention, the second supporting seat includes a bottom base used for the second bearing to be inserted into and located between the inner grinding unit and the grinding seat, and a peripheral wall extending upwards from the bottom base. The bottom base is cooperated with the peripheral wall to define a receiving space for receiving the inner grinding unit and the rotating shaft unit. The grinding mechanism further includes a powder cleaning unit sleeved on the rotating shaft unit and located between the bottom base of the second supporting seat and the inner grinding unit. The powder cleaning unit includes a rotary member sleeved on the rotating shaft unit and a plastic member connected to the rotary member. The plastic member includes a plurality of films extending outwards and spirally and abutting against the bottom base.
- In the grinding device of the present invention, a plurality of assembling grooves which are spaced from each other and substantially inverted L-shaped are formed at the bottom of the first supporting seat. The second supporting seat further includes a plurality of assembling blocks extending radially outwards from the peripheral wall. The assembling blocks are embedded in the assembling grooves, respectively.
- In the grinding device of the present invention, the second supporting seat further includes an annular seat extending downwards from the bottom base, the second bearing is inserted in the annular seat.
- In the grinding device of the present invention, the first supporting seat includes a plurality of limiting blocks which extend radially outwards, the grinding seat defines a grinding space provided for the grinding mechanism to install therein and a plurality of limiting grooves formed by recessing downwardly from top to bottom. The limiting grooves are respectively used for the limiting blocks to embed therein.
- In the grinding device of the present invention, the grinding device is mounted in a body of a coffee machine and used for grinding coffee beans.
- The beneficial effects brought by the present invention are: the grinding mechanism provides support for the rotating shaft unit by the supporting unit abutting against the rotating shaft unit, which can improve the stability of the rotating shaft unit, to solve the problem of poor stability of the rotating shaft unit and the problem of uneven powder thickness due to the shaking of the inner grinding unit relative to the outer grinding unit.
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FIG. 1 is a cross-sectional view showing an existing grinding device; -
FIG. 2 is an isometric view showing a grinding device according to the first embodiment of the present invention when used in a coffee machine; -
FIG. 3 is an exploded isometric view showing the grinding device of the first embodiment; -
FIG. 4 is an exploded isometric view showing the grinding mechanism of the first embodiment; -
FIG. 5 is an assembled isometric view showing the grinding device of the first embodiment; -
FIG. 6 is an exploded isometric view showing that the grinding mechanism of the first embodiment can be wholly detached from the grinding seat; -
FIG. 7 is an isometric view showing a grinding device according to a second embodiment, which does not fall within the scope of the claims. -
FIG. 8 is an exploded isometric view showing the grinding device of the second embodiment; -
FIG. 9 is an assembled isometric view showing the grinding device of the second embodiment. - The present invention will be described in detail with reference to the accompanying drawings and the embodiments. It should be noted that similar elements are represented by the same number in the following description.
- Referring to
FIGS. 2-4 , a first embodiment of the grinding device of the present invention is suitable for mounting in abody 211 of acoffee machine 21 and grinding a substance to be ground (not shown in the figures). The substance to be ground is coffee bean in the first embodiment. - The grinding device of the first embodiment includes a grinding
mechanism 22 capable of grinding the substance to be ground, adriving mechanism 23 under the grindingmechanism 22 and capable of driving the grindingmechanism 22 to operate, and a grindingseat 24 between the grindingmechanism 22 and thedriving mechanism 23. - Referring to
FIGS. 3-5 , the grindingmechanism 22 includes a supportingunit 3 installed on the grindingseat 24, arotating shaft unit 4 assembled on the supportingunit 3, anelastic member 5 sleeved on therotating shaft unit 4, and anouter grinding unit 6, aninner grinding unit 7 and apowder cleaning unit 8 located between the supportingunit 3 and therotating shaft unit 4. - The supporting
unit 3 includes a first supportingseat 31 supported on the grindingseat 24, a first supportingassembly 32 embedded in the top of the first supportingseat 31, and a second supportingassembly 33 embedded in the bottom of the first supportingseat 31. - The first supporting
seat 31 is substantially annular. At the top of the first supportingseat 31, an annular groove 311 (seeFIG. 5 ) is formed for embedding the first supportingassembly 32, and threerib holding grooves 312 extend upwards from theannular groove 311 and are spaced from each other at equal intervals (due to the angle of view, only tworib holding grooves 312 are shown in the figures, seeFIG. 3 ). At the bottom of the first supportingseat 31, three assemblinggrooves 313 which are spaced from each other at equal intervals and substantially inverted L-shaped are formed for the assembly of the second supporting assembly 33 (due to the angle of view, only two assemblinggrooves 313 are shown in the figures, seeFIG. 4 ). The first supportingseat 31 further includes three limitingblocks 314 which extend radially outwards for the first supportingseat 31 to be limited by the grindingseat 24 and unable to rotate relative to the grinding seat 24 (seeFIG. 4 ). - The first supporting
assembly 32 includes a first supportingmember 34 and afirst bearing 35 installed in the first supportingmember 34. - The first supporting
member 34 includes anouter ring 341 which is annular and embedded in theannular groove 311 of the first supportingseat 31, aninner ring 342 which is spaced from theouter ring 341 and provided for the insertion of thefirst bearing 35, and a plurality ofribs 343 which are connected between theouter ring 341 and theinner ring 342 and embedded in therib holding grooves 312 of the first supportingseat 31 respectively. - The
first bearing 35 is sleeved on therotating shaft unit 4 and abuts against therotating shaft unit 4. Thefirst bearing 35 is defined with a first supportinghole 351 for the top end of therotating shaft unit 4 to be rotationally inserted therein. - The second supporting
assembly 33 includes a second supportingseat 36 assembled at the bottom of the first supportingseat 31, and asecond bearing 37 arranged in the second supportingseat 36. - The second supporting
seat 36 includes a substantiallycircular bottom base 361 provided for the insertion of thesecond bearing 37, aperipheral wall 362 extending upwards from thebottom base 361, anannular seat 363 extending downwards from thebottom base 361, and three assemblingblocks 364 extending radially outwards from the peripheral wall 362 (due to the angle of view, only one or two of the assembling blocks 364 are shown in the figures). - The
bottom base 361 is located under the outer grindingunit 6, theinner grinding unit 7 and thepowder cleaning unit 8, and is cooperated with theperipheral wall 362 to define a receivingspace 365 for receiving therotating shaft unit 4, the outer grindingunit 6, theinner grinding unit 7 and thepowder cleaning unit 8. Theperipheral wall 362 is laterally provided with apowder outlet 366. The assembling blocks 364 are embedded in the assemblinggrooves 313 of the first supportingseat 31, respectively. - The
second bearing 37 is inserted in theannular seat 363 of the second supportingseat 36, and thesecond bearing 37 is sleeved on and abutted against the bottom end of therotating shaft unit 4. Thesecond bearing 37 defines a second supportinghole 371 for the bottom end of therotating shaft unit 4 to be rotatably inserted therein. - The
rotating shaft unit 4 includes afirst shaft part 41 and an oppositesecond shaft part 42 provided for being assembled and connected to thedriving mechanism 23, and a connectingshaft part 43 connected between thefirst shaft part 41 and thesecond shaft part 42 with an outer diameter larger than thefirst shaft part 41. - The
first shaft part 41 and thesecond shaft part 42 are respectively inserted into the first supportinghole 351 and the second supportinghole 371, and are respectively abutted against thefirst bearing 35 and thesecond bearing 37, and are respectively supported by thefirst bearing 35 and thesecond bearing 37. Thesecond shaft part 42 is inserted in the grindingseat 24, and protrudes downward from the grindingseat 24, and is inserted in thedriving mechanism 23. The cross section of thesecond axis part 42 is polygonal. The width of the connectingshaft part 43 is larger than thefirst shaft part 41 and thesecond shaft part 42. - The
elastic member 5 is sleeved on thefirst shaft part 41, with a top end abutting against thefirst bearing 35 of the first supportingassembly 32 and a bottom end abutting against the connectingshaft part 43. Theelastic member 5 provides an elastic force to maintain the interval distance between the first supportingassembly 32 and the connectingshaft part 43. - The
outer grinding unit 6 includes an upper grindingpart 61 and a lower grindingpart 62 which are connected with each other. The upper grindingpart 61 is located under the first supportingmember 34, and has a shrinking size in the direction from top to bottom, and the top end of the upper grindingpart 61 is embedded in theannular groove 311 of the first supportingseat 31. The lower grindingpart 62 extends from the upper grindingpart 61 with an expanded size in the direction from top to bottom. The lower grindingpart 62 cooperates with the upper grindingpart 61 to surround theinner grinding unit 7 at interval. - The
inner grinding unit 7 has a shape of a substantially truncated cone, and is sleeved on the connectingshaft part 43 and thesecond shaft part 42 of therotating shaft unit 4, and is located between the outer grindingunit 6 and thepowder cleaning unit 8 along the radial direction. - The
powder cleaning unit 8 includes arotary member 81 sleeved on therotating shaft unit 4, aplastic member 82 assembled to therotary member 81 and extending downward and abutting against thebottom base 361 of the second supportingseat 36, and a second supportingmember 83 and a third supportingmember 84. - The
plastic member 82 has a plurality offilms 821 extending radially outwards and spirally. The second supportingmember 83 includes a plurality ofpins 831 inserted in thebottom base 361 and abutted on the grindingseat 24. The grindingmechanism 22 can be supported on the grindingseat 24 by thepins 831. The third supportingmember 84 is in the shape of a nut, abutted against the second supportingmember 83 and therotary member 81, sleeved on thesecond shaft part 42 of therotating shaft unit 4, and provided for theplastic member 82 to sleeve on. - The
driving mechanism 23 is formed with an assemblinghole 231 with a shape corresponding to the shape of thesecond shaft part 42 of therotating shaft unit 4. The assemblinghole 231 is used for thesecond shaft part 42 to be detachably assembled with thedriving mechanism 23, such that thedriving mechanism 23 can drive the rotatingshaft unit 4 to rotate with its own axis. - The grinding
seat 24 defines a grindingspace 241 provided for the grindingmechanism 22 to install, apowder discharge channel 242 extending outwards and downwards from the grinding space 241 (seeFIG. 5 ), a throughhole 243 communicating with the grindingspace 241, and three limitinggrooves 244 provided at equal intervals and formed by recessing downwardly from top to bottom. The throughhole 243 and the first supportinghole 351 are oppositely spaced from each other, respectively for the insertion of thesecond shaft part 42 and thefirst shaft part 41 of therotating shaft unit 4. The limitinggrooves 244 are respectively used for the limitingblocks 314 of the first supportingseat 31 to embed therein, so as to limit the first supportingseat 31. - When the grinding device of the first embodiment operates, the
driving mechanism 23 can drive thefirst shaft part 41 and thesecond shaft part 42 of therotating shaft unit 4 to be supported and limited by thefirst bearing 35 and thesecond bearing 37 respectively. Therefore, when therotating shaft unit 4 is rotating, the top end (i.e., the first shaft part 41) will not have the situation of drawing circle and swinging, and the operation stability is good, thereby avoiding the problem that theinner grinding unit 7 collides with the outer grindingunit 6 due to the shaking of therotating shaft unit 4. Meanwhile, the powder ground by the first embodiment has better uniformity of thickness and fineness. - Further, the
elastic member 5 can maintain the distance between the first supportingassembly 32 and the connectingshaft part 43, and can also keep the outer grindingunit 6 embedded in the first supportingassembly 32 at a certain distance from theinner grinding unit 7, thereby also having the effect of avoiding the outer grindingunit 6 from colliding with theinner grinding unit 7 and having the effect of ensuring uniform powder thickness and fineness. - In the first embodiment, the first supporting
member 34 and the first supportingseat 31 are two-piece detachable design, which have the advantages of detaching from each other to be cleaned thoroughly. However, in other embodiments of the present invention, the first supportingmember 34 and the first supportingseat 31 may be integrally formed, so as to have the advantages of convenient assembly and disassembly wholly. - Referring to
FIGS. 4-6 , in the first embodiment, the outer grindingunit 6 is assembled to the first supportingseat 31 of the supportingunit 3, therotating shaft unit 4 is inserted between the first supportingseat 31 and the second supportingseat 36, theinner grinding unit 7, the outer grindingunit 6 and thepowder cleaning unit 8 are sleeved on therotating shaft unit 4. Thus, the user only needs to take out the first supportingseat 31 and the second supportingseat 36 of the supportingunit 3, so that the grindingmechanism 22 of the first embodiment can be wholly detached from the grindingseat 24, as shown inFIG. 6 , and thewhole grinding mechanism 22 can be taken out for cleaning or washing, which is quite convenient. - When the grinding
mechanism 22 is taken out relative to thedriving mechanism 23 and the grindingseat 24, thefirst shaft part 41 and thesecond shaft part 42 are still limited and supported by thefirst bearing 35 and thesecond bearing 37 respectively, or in other words, thesecond shaft part 42 is still limited and supported by the second supportingassembly 33 when losing the limiting and supporting of thedriving mechanism 23. Therefore, the stability of therotating shaft unit 4 is quite good when the grindingmechanism 22 is taken out, and therotating shaft unit 4 will not shake relative to the supportingunit 3. The foregoing design has the advantages of convenient assembly. As long as the limitingblocks 314 of the first supportingseat 31 are aligned with the limitinggrooves 244 of the grindingseat 24, in other words, as long as the supportingunit 3 is installed relative to the grindingseat 24, thesecond shaft part 42 of therotating shaft unit 4 will be aligned with and inserted into the throughhole 243 of the grindingseat 24 and the assemblinghole 231 of thedriving mechanism 23, which is quite convenient for the users to install. - In the operation of the grinding device of the first embodiment, that is, when the
rotating shaft unit 4 rotates, thefilms 821 of thepowder cleaning unit 8 can push out the coffee powder from thepowder outlet 366 of the second supportingseat 36. In addition, since thefilms 821 are abutted on thebottom base 361 of the second supportingseat 36, when thefilms 821 rotate, the powder generated by grinding can be prevented from adhering to thebottom base 361. - Referring to
FIGS. 7-9 , a second embodiment of the grinding device, which does not fall within the scope of the claims, is similar to the first embodiment, with the differences described as follows. The first supportingseat 31 and the first supportingmember 34 of the first supportingassembly 32 are integrally formed. The second supportingseat 36 omits the bottom base 361 (seeFIG. 4 ) and thepowder outlet 366, and the second supportingseat 36 includes a plurality ofrib walls 367 connected between theperipheral wall 362 and theannular seat 363. Thedriving mechanism 23 is located above the grindingmechanism 22, and further includes a clutch 44 sleeved on the top of thefirst shaft part 41 and having a polygonal cross section. The clutch 44 can be detachably inserted into the assemblinghole 231 of thedriving mechanism 23, so that thefirst shaft part 41 is detachably inserted into thedriving mechanism 23. The bottom end of thesecond shaft part 42 of therotating shaft unit 4 is embedded in thesecond bearing 37 of the second supportingassembly 33. Thepowder cleaning unit 8 omits theplastic member 82 and the second supportingmember 83, and the shape of the third supportingmember 84 is slightly different. - Since the supporting
unit 3 of the second embodiment can also support and limit the two opposite ends of therotating shaft unit 4, the same effect as the first embodiment can be achieved. In addition, the second embodiment is characterized in that thedriving mechanism 23 drives therotating shaft unit 4 from the top, and is not located at the bottom to block the coffee powder from falling down. Therefore, the coffee powder after being ground can fall out directly, and thesecond shaft part 42 of therotating shaft unit 4 can be shortened because there is no need to connect to thedriving mechanism 23. - In the second embodiment, the number of the
ribs 343 of the first supportingmember 34 and therib walls 367 of the second supportingseat 36 are respectively three, but it is not limited in other embodiments of the present invention. In other words, the number of theribs 343 of the first supportingmember 34 and therib walls 367 of the second supportingseat 36 can also be two, four, five or more. - In conclusion, the
rotating shaft unit 4 is supported and limited by the supportingunit 3 in the grindingmechanism 22 of the grinding device of the present invention, to improve the stability of therotating shaft unit 4 and solve the existing problem of poor stability. Thus, the object of the present invention can be achieved. - The above are only the specific embodiments of the present invention, and are not intended to limit the present invention.
Claims (14)
- A grinding device comprising a grinding mechanism (22), a driving mechanism (23) capable of driving the grinding mechanism (22) to operate, and a grinding seat (24) located between the grinding mechanism (22) and the driving mechanism (23), the grinding mechanism (22) comprising a rotating shaft unit (4) inserted in and protruded from the grinding seat (24) to be rotatably connected to the driving mechanism (23), an inner grinding unit (7) sleeved on the rotating shaft unit (4), and an outer grinding unit (6) surrounding and spaced from the inner grinding unit (7), the driving mechanism (23) being able to drive the rotating shaft unit (4) to bring the inner grinding unit (7) to rotate and grind the substance to be ground in cooperation with the outer grinding unit (6), the grinding mechanism (22) further comprising a supporting unit (3) sleeved on and abutted against the rotating shaft unit (4), the supporting unit (3) comprising a first supporting seat (31) and a first supporting assembly (32) connected to the first supporting seat (31), the first supporting assembly (32) defining a first supporting hole (351), the supporting unit (3) further comprising a second supporting assembly (33) assembled to the first supporting seat (31) and located between the inner grinding unit (7) and the grinding seat (24), the second supporting assembly (33) defining a second supporting hole (371), the top end of the rotating shaft unit (4) rotationally inserted in the first supporting hole (351), the bottom end of the rotating shaft unit (4) rotationally inserted in the second supporting hole (371), characterized in that the driving mechanism (23) is located under the grinding mechanism (22), the driving mechanism (23) is provided with an assembling hole (231) under the second supporting hole (371), the bottom end of the rotating shaft unit (4) is further detachably inserted into the assembling hole (231) of the driving mechanism (23), and the first supporting seat (31) is detachably assembled and connected to the grinding seat (24), so that the grinding mechanism (22) is able to be detached from or assembled to the grinding seat (24).
- The grinding device of claim 1, wherein the first supporting assembly (32) is sleeved on the rotating shaft unit (4).
- The grinding device of claim 2, wherein the first supporting assembly (32) comprises a first bearing (35) defining the first supporting hole (351) for the top end of the rotating shaft unit (4) to be inserted into and abutted against, and a first supporting member (34) connecting to the first supporting seat (31) and supporting the first bearing (35).
- The grinding device of claim 3, wherein the rotating shaft unit (4) comprises a first shaft part (41) inserted in the first supporting hole (351), an opposite second shaft part (42) inserted in the second supporting hole (371) and the assembling hole (231), and a connecting shaft part (43) connected between the first shaft part (41) and the second shaft part (42) and having an outer diameter larger than the first shaft part (41), the supporting unit (3) further comprises an elastic member (5) sleeved on the first shaft part (41) and sandwiched between the connecting shaft part (43) and the first bearing (35) of the first supporting assembly (32).
- The grinding device of claim 3, wherein the first supporting member (34) comprises an outer ring (341) connected to the first supporting seat (31), an inner ring (342) spaced from the outer ring (341) and provided for the insertion of the first bearing (35), and a plurality of ribs (343) connected between the outer ring (341) and the inner ring (342).
- The grinding device of claim 5, wherein an annular groove (311) is formed at the top of the first supporting seat (31), a plurality of rib holding grooves (312) extend upwards from the annular groove (311) and are spaced from each other, the outer ring (341) of the first supporting member (34) is embedded in the annular groove (311), the ribs (343) of the first supporting member (34) are embedded in the rib holding grooves (312) respectively.
- The grinding device of claim 2, wherein the second supporting assembly (33) is inserted by the rotating shaft unit (4), and the second supporting assembly (33) is sleeved on the rotating shaft unit (4).
- The grinding device of claim 1, wherein the assembling hole (231) has a polygonal cross section, the rotating shaft unit (4) comprises a first shaft part (41) and an opposite second shaft part (42), the second shaft part (42) has a polygonal cross section and is detachably inserted into the assembling hole (231).
- The grinding device of claim 7, wherein the second supporting assembly (33) comprises a second supporting seat (36) assembled to the first supporting seat (31), and a second bearing (37) arranged in the second supporting seat (36) for the bottom end of the rotating shaft unit (4) to be inserted into and abutted against, the second supporting seat (36) is located between the inner grinding unit (7) and the grinding seat (24), and the second bearing (37) defines the second supporting hole (371).
- The grinding device of claim 9, wherein the second supporting seat (36) comprises a bottom base (361) used for the second bearing (37) to be inserted into and located between the inner grinding unit (7) and the grinding seat (24), and a peripheral wall (362) extending upwards from the bottom base (361), the bottom base (361) is cooperated with the peripheral wall (362) to define a receiving space (365) for receiving the inner grinding unit (7) and the rotating shaft unit (4), the grinding mechanism (22) further comprises a powder cleaning unit (8) sleeved on the rotating shaft unit (4) and located between the bottom base (361) of the second supporting seat (36) and the inner grinding unit (7), the powder cleaning unit (8) comprises a rotary member (81) sleeved on the rotating shaft unit (4) and a plastic member (82) connected to the rotary member (81), the plastic member (82) comprises a plurality of films (821) extending outwards and spirally and abutting against the bottom base (361).
- The grinding device of claim 10, wherein a plurality of assembling grooves (313) which are spaced from each other and substantially inverted L-shaped are formed at the bottom of the first supporting seat (31), the second supporting seat (36) further comprises a plurality of assembling blocks (364) extending radially outwards from the peripheral wall (362), the assembling blocks (364) are embedded in the assembling grooves (313), respectively.
- The grinding device of claim 10, wherein the second supporting seat (36) further comprises an annular seat (363) extending downwards from the bottom base (361), the second bearing (37) is inserted in the annular seat (363).
- The grinding device of claim 1, wherein the first supporting seat (31) comprises a plurality of limiting blocks (314) which extend radially outwards, the grinding seat (24) defines a grinding space (241) provided for the grinding mechanism (22) to install therein and a plurality of limiting grooves (244) formed by recessing downwardly from top to bottom, the limiting grooves (244) are respectively used for the limiting blocks (314) to embed therein.
- The grinding device of any one of claims 1 to 13, wherein the grinding device is mounted in a body (211) of a coffee machine (21) and used for grinding coffee beans.
Applications Claiming Priority (1)
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CN201910103454.4A CN111513587B (en) | 2019-02-01 | 2019-02-01 | Grinding device |
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EP3689204B1 true EP3689204B1 (en) | 2022-02-16 |
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CN108543565B (en) * | 2018-03-27 | 2024-02-27 | 深圳市饮之源科技有限公司 | Automatic pulverizer and pulverizing method thereof |
USD1019255S1 (en) | 2022-09-30 | 2024-03-26 | Sharkninja Operating Llc | Housing of a micro puree machine |
USD1039911S1 (en) | 2022-09-30 | 2024-08-27 | Sharkninja Operating Llc | Bowl of a micro puree machine |
USD1020383S1 (en) * | 2022-09-30 | 2024-04-02 | Sharkninja Operating Llc | Bowl of a micro puree machine |
US12048395B2 (en) | 2022-12-28 | 2024-07-30 | Sharkninja Operating Llc | Twist off container and coupling assembly for a micro puree machine |
Citations (1)
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EP1444943B1 (en) * | 2003-02-04 | 2004-10-13 | Heng-Te Yang | Grinder for pepper grains, spices, coffee beans or the like |
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US1633844A (en) * | 1924-07-01 | 1927-06-28 | Enterprise Mfg Co | Release clutch for grinding mills |
DE1300660B (en) * | 1966-03-09 | 1969-08-07 | Rotenburger Metallwerke Gmbh | Milling chain for delimbing and debarking tree trunks |
US5531389A (en) * | 1995-02-24 | 1996-07-02 | Husted; Wayne | Condiment mill with a one-way clutch |
CN2584091Y (en) * | 2002-01-28 | 2003-11-05 | 汪恩光 | Paper grain grinding mill |
ITFI20060281A1 (en) * | 2006-11-14 | 2008-05-15 | Saeco Ipr Ltd | GRINDING ORGANS FOR A COFFEE MILL DEVICE AND A COFFEE MACHINE INCLUDING SUCH A DEVICE. |
TWM446058U (en) * | 2012-09-05 | 2013-02-01 | Top Work Industry Co Ltd | Support device for tool grinding machine |
TWM464116U (en) * | 2013-04-19 | 2013-11-01 | zong-ren Bai | Improvement of grinder |
CN203647163U (en) * | 2013-12-11 | 2014-06-18 | 瀛丽企业股份有限公司 | Grinder and grinding unit thereof |
EP2984973A1 (en) * | 2014-08-12 | 2016-02-17 | Jura Elektroapparate Ag | Grinder for grinding coffee beans and coffee machine with such a grinder |
CN206183079U (en) * | 2016-08-23 | 2017-05-24 | 广东新宝电器股份有限公司 | grinding component and coffee machine |
CN208355277U (en) * | 2017-08-02 | 2019-01-11 | 刘清海 | Portable coffee grinding and brewing device |
CN108078430A (en) * | 2017-12-08 | 2018-05-29 | 防城港市润禾农林科技有限公司 | A kind of grinding device of five-spice powder |
IT201800004111A1 (en) * | 2018-03-30 | 2019-09-30 | Girardi S R L | APPARATUS AND METHOD OF GRINDING |
-
2019
- 2019-02-01 CN CN201910103454.4A patent/CN111513587B/en active Active
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2020
- 2020-01-10 EP EP20151199.5A patent/EP3689204B1/en active Active
- 2020-01-19 US US16/746,956 patent/US11291335B2/en active Active
Patent Citations (1)
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EP1444943B1 (en) * | 2003-02-04 | 2004-10-13 | Heng-Te Yang | Grinder for pepper grains, spices, coffee beans or the like |
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CN111513587B (en) | 2022-09-13 |
US11291335B2 (en) | 2022-04-05 |
CN111513587A (en) | 2020-08-11 |
US20200245816A1 (en) | 2020-08-06 |
EP3689204A1 (en) | 2020-08-05 |
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